Department of Neurobiology, Yale School of Medicine, New Haven, CT 06520, USA.
Neuron. 2013 Aug 7;79(3):567-78. doi: 10.1016/j.neuron.2013.06.008. Epub 2013 Jul 11.
Long-range corticocortical communication may have important roles in context-dependent sensory processing, yet we know very little about how these pathways influence their target regions. We studied the influence of primary motor cortex activity on primary somatosensory cortex in the mouse whisker system. We show that primary motor and somatosensory cortices undergo coherent, context-dependent changes in network state. Moreover, we show that motor cortex activity can drive changes in somatosensory cortex network state. A series of experiments demonstrate the involvement of the direct corticocortical feedback pathway, providing temporally precise and spatially targeted modulation of network dynamics. Cortically mediated changes in network state significantly impact sensory coding, with activated states increasing the reliability of responses to complex stimuli. By influencing network state, corticocortical communication from motor cortex may ensure that during active exploration the relevant sensory region is primed for enhanced sensory discrimination.
长程皮层间的通讯可能在依赖于上下文的感觉处理中具有重要作用,但我们对于这些通路如何影响其靶区知之甚少。我们研究了初级运动皮层活动对小鼠胡须系统初级体感皮层的影响。我们发现初级运动和体感皮层在网络状态上表现出一致的、依赖于上下文的变化。此外,我们还发现运动皮层的活动可以驱动体感皮层网络状态的变化。一系列实验证明了直接皮层间反馈通路的参与,提供了对网络动力学的时间精确和空间靶向调节。皮层介导的网络状态变化显著影响感觉编码,激活状态增加了对复杂刺激的反应可靠性。通过影响网络状态,来自运动皮层的皮层间通讯可以确保在主动探索期间,相关的感觉区域为增强的感觉辨别做好准备。